IC Phoenix logo

Home ›  T  › T84 > TS27L4AIDT

TS27L4AIDT from STM,ST Microelectronics

Fast Delivery, Competitive Price @IC-phoenix

If you need more electronic components or better pricing, we welcome any inquiry.

0.000ms

TS27L4AIDT

Manufacturer: STM

PRECISION VERY LOW POWER CMOS QUAD OP-AMPS

Partnumber Manufacturer Quantity Availability
TS27L4AIDT STM 5000 In Stock

Description and Introduction

PRECISION VERY LOW POWER CMOS QUAD OP-AMPS The TS27L4AIDT is a quad low-power operational amplifier manufactured by STMicroelectronics (STM). Below are the factual specifications, descriptions, and features from Ic-phoenix technical data files:

### **Specifications:**  
- **Supply Voltage Range:** 3V to 16V (single supply) or ±1.5V to ±8V (dual supply)  
- **Low Supply Current:** 24µA per amplifier (typical)  
- **Input Offset Voltage:** 1mV (max)  
- **Input Bias Current:** 20nA (max)  
- **Gain Bandwidth Product:** 1MHz (typical)  
- **Slew Rate:** 0.3V/µs (typical)  
- **Operating Temperature Range:** -40°C to +125°C  
- **Package:** SO-14  

### **Descriptions:**  
- The TS27L4AIDT is a quad operational amplifier designed for low-power applications.  
- It features rail-to-rail output swing and is optimized for battery-powered devices.  
- The device is suitable for precision analog circuits due to its low offset voltage and bias current.  

### **Features:**  
- **Low Power Consumption:** Ideal for portable and battery-operated systems.  
- **Wide Supply Voltage Range:** Supports both single and dual supply configurations.  
- **Rail-to-Rail Output:** Ensures maximum dynamic range.  
- **ESD Protection:** Up to 2kV (HBM model).  
- **High Input Impedance:** Minimizes loading effects on signal sources.  

This information is based solely on the manufacturer's datasheet.

Request Quotation

For immediate assistance, call us at +86 533 2716050 or email [email protected]

Part Number Quantity Target Price($USD) Email Contact Person
We offer highly competitive channel pricing. Get in touch for details.

Specializes in hard-to-find components chips